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Comma Separated Values - 131.5 KB -
MD5: 3c6de559caf0c56f92aff7a9e7091fd2
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MD5: 37d739e944d0a7f62d2f8c2ef8a6668e
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MD5: 7e1b59615e3954d5dd0f65a826b1b29e
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Comma Separated Values - 142.0 KB -
MD5: d125dfe20f6ee08e60c965ad07014b78
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May 8, 2026 -
Boosting Zinc-Ion Hybrid Capacitors with Mesoporous Carbon Derived from Highly Graphitized Carbon Quantum Dots
Plain Text - 4.3 KB -
MD5: e243af90dbf6f172f58c8ff004a595b3
README file describing dataset structure, file organization, sample naming, and experimental details. |
May 8, 2026 -
Boosting Zinc-Ion Hybrid Capacitors with Mesoporous Carbon Derived from Highly Graphitized Carbon Quantum Dots
Comma Separated Values - 175.1 KB -
MD5: 860c3f2ab1dfe39b0942b8e66a4cba05
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May 8, 2026 -
Boosting Zinc-Ion Hybrid Capacitors with Mesoporous Carbon Derived from Highly Graphitized Carbon Quantum Dots
Comma Separated Values - 176.3 KB -
MD5: 30e1d4003125eba260621ca36e7fa3d0
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May 8, 2026 -
Boosting Zinc-Ion Hybrid Capacitors with Mesoporous Carbon Derived from Highly Graphitized Carbon Quantum Dots
Comma Separated Values - 1.3 KB -
MD5: 3fe285b4a68e34d235905da8d044d535
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May 8, 2026 -
Boosting Zinc-Ion Hybrid Capacitors with Mesoporous Carbon Derived from Highly Graphitized Carbon Quantum Dots
Comma Separated Values - 6.3 MB -
MD5: 640d6f9e785e8f21fde584a1a7082662
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May 8, 2026 -
Boosting Zinc-Ion Hybrid Capacitors with Mesoporous Carbon Derived from Highly Graphitized Carbon Quantum Dots
Comma Separated Values - 4.1 KB -
MD5: 03e0e3ffd6bf6caf674ac6a36a2a1b58
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